Cultivation and fermentation
Develop laboratory cultivation for cells and microorganisms, then study control variables, liquid- or solid-state fermentation and the conditions needed for scale-up.
BIOSCIENCES · SYSTEMS BIOLOGY · BIOINFORMATICS
A connected capability spanning biological data, cell and microbial systems, bioprocess design, fermentation, scale-up and sensing—built to move from biological understanding toward processes that can be tested and transferred.
Cell and microbial cultivation, liquid- and solid-state fermentation, downstream purification and pilot-scale process learning.
Genome-scale comparison, bioinformatics and system-level analysis to guide strain and cellular-productivity improvement.
Nanomaterials, biomolecular interfaces, electrochemical and optical signals, multiplex sensing and printable platforms.
RESEARCH CONTEXT
The research team operates within the Biochemical Engineering and Systems Biology Research Group and collaborates with the KMUTT research cluster at Bang Khun Thian through BEC. Established under BIOTEC–KMUTT cooperation in 1986, the platform was created to develop and improve biochemical-engineering products, processes and technologies; demonstrate and transfer pilot-plant knowledge; and strengthen personnel capability for national and regional needs.
THREE CONNECTED DIRECTIONS
The laboratory is not a collection of unrelated techniques. Data and measurement improve biological design; biological design defines the process; process evidence feeds back into models and product decisions.
Develop laboratory cultivation for cells and microorganisms, then study control variables, liquid- or solid-state fermentation and the conditions needed for scale-up.
Connect upstream productivity to downstream recovery and purification so that yield, purity, cost and process robustness can be evaluated together.
Analyse genomes and proteomes, compare organisms such as yeast and Spirulina, and develop platforms for identifying and predicting bioactive peptides from biological samples.
Develop high-sensitivity measurement through nanomaterial amplification, biomolecular interfaces, electrochemical or optical signals, visual outputs, screen printing and E-jet printing.
CONNECTED COLLABORATION
The two laboratories answer different parts of one translation problem—from biological information and system design to process development and pilot manufacturing.
View both laboratories BIOTEC source ↗